通过多电极配置增强经皮脊髓刺激的选择性。

IF 3.7 3区 医学 Q2 ENGINEERING, BIOMEDICAL
Noah Bryson, Lorenzo Lombardi, Rachel Hawthorn, Jie Fei, Rodolfo Keesey, J D Peiffer, Ismael Seáñez
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引用次数: 0

摘要

目的:经皮脊髓刺激(tSCS)作为一种非侵入性康复方法,在脊髓损伤(SCI)后恢复瘫痪肌肉的运动,其势头越来越大。然而,它的低选择性限制了可以进行的运动类型,从而限制了它在康复中的潜在应用。方法。在这个交叉研究设计中,我们研究了在16个神经系统完整的个体中,tSCS的多电极配置是否可以增强单个肌肉的肌肉募集选择性。我们假设,由于下肢肌肉的节段性神经支配,我们可以确定肌肉特异性的最佳刺激位置,这将提高传统tSCS的招募选择性。我们通过使用常规和多电极tSCS向腰骶增大提供双相电刺激脉冲来引发腿部肌肉反应。结果。对募集曲线反应的分析证实,多电极配置可以提高tSCS的头骶和侧选择性。为了研究空间选择性tSCS引发的运动反应是否由后根肌反射介导,每个刺激事件都是一个条件测试间隔为33.3ms的配对脉冲。对第二个刺激脉冲的肌肉反应被显著抑制,激活后抑郁的特征表明,空间选择性tSCS募集本体感觉纤维,该纤维反射性地激活脊髓中的肌肉特异性运动神经元。此外,腿部肌肉募集概率和节段神经支配图的组合揭示了与每个电极的位置一致的常规脊柱激活图。意义肌肉募集选择性的提高对于有效转化为选择性增强神经康复中单关节运动的刺激方案至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced selectivity of transcutaneous spinal cord stimulation by multielectrode configuration.

Objective.Transcutaneous spinal cord stimulation (tSCS) has been gaining momentum as a non-invasive rehabilitation approach to restore movement to paralyzed muscles after spinal cord injury (SCI). However, its low selectivity limits the types of movements that can be enabled and, thus, its potential applications in rehabilitation.Approach.In this cross-over study design, we investigated whether muscle recruitment selectivity of individual muscles could be enhanced by multielectrode configurations of tSCS in 16 neurologically intact individuals. We hypothesized that due to the segmental innervation of lower limb muscles, we could identify muscle-specific optimal stimulation locations that would enable improved recruitment selectivity over conventional tSCS. We elicited leg muscle responses by delivering biphasic pulses of electrical stimulation to the lumbosacral enlargement using conventional and multielectrode tSCS.Results.Analysis of recruitment curve responses confirmed that multielectrode configurations could improve the rostrocaudal and lateral selectivity of tSCS. To investigate whether motor responses elicited by spatially selective tSCS were mediated by posterior root-muscle reflexes, each stimulation event was a paired pulse with a conditioning-test interval of 33.3 ms. Muscle responses to the second stimulation pulse were significantly suppressed, a characteristic of post-activation depression suggesting that spatially selective tSCS recruits proprioceptive fibers that reflexively activate muscle-specific motor neurons in the spinal cord. Moreover, the combination of leg muscle recruitment probability and segmental innervation maps revealed a stereotypical spinal activation map in congruence with each electrode's position.Significance. Improvements in muscle recruitment selectivity could be essential for the effective translation into stimulation protocols that selectively enhance single-joint movements in neurorehabilitation.

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来源期刊
Journal of neural engineering
Journal of neural engineering 工程技术-工程:生物医学
CiteScore
7.80
自引率
12.50%
发文量
319
审稿时长
4.2 months
期刊介绍: The goal of Journal of Neural Engineering (JNE) is to act as a forum for the interdisciplinary field of neural engineering where neuroscientists, neurobiologists and engineers can publish their work in one periodical that bridges the gap between neuroscience and engineering. The journal publishes articles in the field of neural engineering at the molecular, cellular and systems levels. The scope of the journal encompasses experimental, computational, theoretical, clinical and applied aspects of: Innovative neurotechnology; Brain-machine (computer) interface; Neural interfacing; Bioelectronic medicines; Neuromodulation; Neural prostheses; Neural control; Neuro-rehabilitation; Neurorobotics; Optical neural engineering; Neural circuits: artificial & biological; Neuromorphic engineering; Neural tissue regeneration; Neural signal processing; Theoretical and computational neuroscience; Systems neuroscience; Translational neuroscience; Neuroimaging.
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